Acta Optica Sinica, Volume. 44, Issue 1, 0106006(2024)

Research Progress of Broken Wire Monitoring of Prestressed Concrete Cylinder Pipe Based on Distributed Optical Fiber Acoustic Sensing

Xuping Zhang1,2, Guangnan Zhou1,2, Haoran Wang1,2, Jin Wang3, Shichao Liu3, Dao Zhang4, Shisong Zhao4, Feng Wang1,2, Fei Xiong2, and Yixin Zhang1,2、*
Author Affiliations
  • 1College of Engineering and Applied Sciences, Nanjing University, Nanjing 210023, Jiangsu, China
  • 2Key Laboratory of Intelligent Optical Sensing and Manipulation (Nanjing University), Ministry of Education, Nanjing 210023, Jiangsu, China
  • 3Beijing Aqua Intelligent Technology Co., Ltd, Beijing 102400, China
  • 4Nanjing Fiber Photonics Technology Co., Ltd, Nanjing 211135, Jiangsu, China
  • show less
    References(60)

    [1] Chen Y C. Safety of long-distance pipeline water conveyance project and protection technology of water hammer hazard[J]. Water & Wastewater Engineering, 40, 1-3, 22(2014).

    [2] Gao K X, Gao Y, Lou X G. Discussion on safety performance and broken wire detection technology of PCCP[J]. Scientific and Technological Innovation, 104-106(2020).

    [3] Zhang S R, Zhang C X, Gu Y[M]. Design, production, construction and numerical analysis of prestressed concrete-filled steel tube (PCCP), 1-10(2009).

    [4] Feng X, Li H Z, Chen B Z et al. Numerical investigations into the failure mode of buried prestressed concrete cylinder pipes under differential settlement[J]. Engineering Failure Analysis, 111, 104492(2020).

    [5] Wang X, Hu S W, Li W H et al. Use of numerical methods for identifying the number of wire breaks in prestressed concrete cylinder pipe by piezoelectric sensing technology[J]. Construction and Building Materials, 268, 121207(2021).

    [6] Dong X N, Dou T S, Dong P et al. Failure experiment and calculation model for prestressed concrete cylinder pipe under three-edge bearing test using distributed fiber optic sensors[J]. Tunnelling and Underground Space Technology, 129, 104682(2022).

    [7] Holley M, Diaz R, Giovanniello M. Acoustic monitoring of prestressed concrete cylinder pipe: a case history[C], 1-9(2001).

    [8] Zhao X F, Zhang J, Yuan H Y. Considerations of enhancing project safety of PCCP water conveyance[J]. China Water Resources, 42-45(2021).

    [10] Xue S G. Analysis and countermeasures of large diameter PCCP pipe bursting in arid and cold areas[J]. China Rural Water and Hydropower, 106-108(2012).

    [11] Qi H M, Song J G, Cui Y. Research on electromagnetic NDE inspection method for broken wire of PCCP[J]. Journal of Electrical Engineering, 233-241(2017).

    [12] Lin T X, Feng S K, Ye G L et al. Tests for leakage monitoring method of large pressure water pipeline[J]. Journal of Vibration and Shock, 40, 136-142(2021).

    [13] Yang L J, Li J Q, Gao S W et al. Leakage monitoring method of natural gas pipeline based on inside-listening[J]. Journal of Shenyang University of Technology, 33, 93-96, 107(2011).

    [14] Zhou L K. Study on bearing characteristics and pipeline design of PCCP pipeline[J]. Technical Supervision in Water Resources, 24, 45-47, 82(2016).

    [15] Ojdrovic R, Nardini P, Zarghamee M. Verification of PCCP failure margin and risk curves[C], 1413-1423(2011).

    [16] Dong X N, Dou T S, Zhao L J et al. An overview on safety assessment of pre-stressed concrete cylinder pipe (PCCP)[J]. Water Resources and Hydropower Engineering, 51, 72-80(2020).

    [17] Ma P. Failure mode and cause analysis of prestressed concrete-filled steel tube (PCCP)[J]. Intelligent City, 6, 137-138(2020).

    [18] Dou T S, Yan J Q. Failure modes and cause analysis on prestressed concrete cylinder pipe(PCCP)[J]. China Concrete and Cement Products, 29-33(2014).

    [19] Yin Y, Yang G Y, Li W W. Production technology of prestressed wire for PCCP[J]. Metal Products, 40, 17-20(2014).

    [20] Lu J X. Property analysis of prestressed steel wire for PCCP[J]. Steel Wire Products, 33, 38-40(2007).

    [21] Chen J M. Talking about some problems appearing in the manufacturing of 4 m diameter PCCP[J]. Sci-Tech Information Development & Economy, 193-194(2008).

    [22] Yang Z G, Jiang Z W, Li W T et al. Influence of different mineral admixtures on corrosion resistance of cement mortar in combined corrosion environment of strong acid and salt in groundwater[J]. Journal of Civil and Environmental Engineering, 37, 82-87(2015).

    [23] Zhao M Y, Li J R, Wang L M. Analysis of factors affecting the durability of buried prestressed steel cylinder concrete pipe[J]. Heilongjiang Hydraulic Science and Technology, 38, 32-33(2010).

    [24] Zhang X L. Analysis on the corrosion of groundwater to the concrete structure and the precautions[J]. Sci-Tech Information Development & Economy, 272-273(2007).

    [25] Peng H B, Dong T G, Huang C J. Research and application of marine concrete admixture[J]. China Concrete, 69-72(2014).

    [26] Sun Q R. Cause analysis of water leakage and research on anti-leakage measures for PCCP water transmission pipeline[J]. Science & Technology of Baotou Steel, 34, 79-81(2008).

    [27] Bai Y H, Liu Y, Yan Y Z et al. Analysis of reason for PCCP pipe bursting based on fluid structure interaction calculation[J]. China Rural Water and Hydropower, 53-55, 59(2011).

    [28] Yao Y. Repair of local drilling damage of large-scale prestressed steel cylinder concrete pipe[J]. Shanxi Water Resources, 25, 52-53(2009).

    [30] Xu J, Tian H, Peng Z H et al. Application of remote field eddy current testing in PCCP broken wire inspection[J]. China Concrete and Cement Products, 32-34(2014).

    [31] Zhang S K. Attach great importance to product quality in the period of great development of PCCP industry[J]. China Concrete and Cement Products, 1-3(2011).

    [32] Wang X H, Zhang H P, Ma H T et al. Comparative experimental study on PCCP broken wire electromagnetic detection equipment[J]. Beijing Water, 59-62(2020).

    [33] Schmidt T R. History of the remote-field eddy current inspection technique: materials evaluation, Vol.[J]. Nondestructive Testing, 23, 364-364(1995).

    [34] Xu X J, Zhang Z B, Jia Y L. Research on E-shape magnetic core based self-differential mode pick-up coil and its application for fine crack non-destructive testing[C], 76-80(2015).

    [35] Si J, Qu M X, Xu F. Finite element analysis on energy flow path of the remote field eddy current effect[J]. Journal of Nanjing University of Aeronautics & Astronautics, 23, 102-108(1991).

    [36] Liu Y, Zhang S Q, Yin C et al. Summary of two pipeline electromagnetic nondestructive testing methods[J]. Journal of Mechanical & Electrical Engineering, 31, 844-848, 853(2014).

    [37] Jing Y F, Wang X F, Yang B F et al. Simulation research on design of pulsed remote field eddy current sensor for axial crack detection in pipeline[J]. Journal of Air Force Engineering University (Natural Science Edition), 12, 74-78(2011).

    [39] Sun Y, Feng H, Sha Z. Application of PCCP monitoring technology based on distributed optical fiber sensing[J]. Water Conservancy Construction and Management, 42, 75-79(2022).

    [40] Xiong F, Qu B Y, Zhou G N et al. A broken wire detection system of PCCP pipeline based on Φ-OTDR and MZI[J]. Optoelectronic Technology, 43, 133-141(2023).

    [41] Luo J J, Yao X D, Zhang D S et al. In-situ experimental research on spectrum responses of broken wire of large diameter PCCP pipelines(Ⅰ)[J]. China Civil Engineering Journal, 49, 110-116(2016).

    [42] Galleher J J, Holley M, Shenkiryk M. Acoustic fiber optic monitoring: how it is changing the remaining service life of the water authority’s pipelines[C], 21-29(2009).

    [43] Rajeev P, Kodikara J, Chiu W K et al. Distributed optical fibre sensors and their applications in pipeline monitoring[J]. Key Engineering Materials, 558, 424-434(2013).

    [44] Yuan L B, Tong W J, Jiang S et al. Road map of fiber optic sensor technology in China[J]. Acta Optica Sinica, 42, 0100001(2022).

    [45] Higgins M S, Paulson P O. Fiber optic sensors for acoustic monitoring of PCCP[C], 1-8(2006).

    [46] Bell G, Paulson P. Measurement and analysis of PCCP wire breaks, slips, and delaminations[C], 1016-1024(2010).

    [47] Yao X D. Integrated real-time monitoring system of wire-breaking and leakage of PCCP pipeline of ancillary works for South-to-North Water Transfer Project in Beijing[J]. Water Resources and Hydropower Engineering, 47, 67-72(2016).

    [48] Qi H M, Song J H, Han J M et al. Monitoring technology of PCCP wire-breaking by distributed FBG sensors[J]. Pipeline Technique and Equipment, 1-4, 8(2018).

    [49] Liu D Y, Feng C M, Zhang J et al. Study on broken wire monitoring of ultra-large diameter PCCP pipeline[J]. China Rural Water and Hydropower, 149-153, 159(2020).

    [50] Wang W P, Elliott J, Song R X et al. Acoustic fiber optic monitoring system for forewarning of PCCP failure[J]. Water Resources and Hydropower Engineering, 40, 68-70, 77(2009).

    [51] Ma B L, Gao R Z, Zhang J J et al. A YOLOX-based automatic monitoring approach of broken wires in prestressed concrete cylinder pipe using fiber-optic distributed acoustic sensors[J]. Sensors, 23, 2090(2023).

    [52] Zhang X P, Ding Z W, Hong R et al. Phase sensitive optical time-domain reflective distributed optical fiber sensing technology[J]. Acta Optica Sinica, 41, 0106004(2021).

    [53] Wang Z H, Jing H. Analysis of pipeline leakage monitoring index based on distributed optical fiber acoustic sensing system[J]. China Instrumentation, 61-65(2021).

    [54] Ji R R, Wan L J, Wu M S. Application of distributed optical fiber acoustic wave sensing technology in PCCP pipeline monitoring[J]. Acoustics and Electronics Engineering, 15-17, 20(2021).

    [55] Zhang X P, Chen X H, Liang L et al. Enhanced C-OTDR-based online monitoring scheme for long-distance submarine cables[J]. Acta Optica Sinica, 41, 1306001(2021).

    [56] Ali T H, Medjadba H, Simohamed L M et al. Intrusion detection and classification using optical fiber vibration sensor[C](2015).

    [57] Li C, Zhang Y M, Liu T G et al. Optic fiber sensors of full-fiberoptic white light interference type[J]. Journal of Transcluction Technology, 14, 91-95(2001).

    [58] Wang H Y, Wang Y, Yang J P et al. Dual Mach-Zehnder interferometric optical fiber sensing system based on Burg algorithm[J]. Journal of Electronic Measurement and Instrumentation, 37, 183-191(2023).

    [59] Sun Y, Jia B, Zhang T Z. Position determination sensing system based on all-fiber interferometer with feedback loop[J]. Transducer and Microsystem Technologies, 25, 44-46(2006).

    [60] Zhang Y X, Xia L, Cao C Q et al. A hybrid single-end-access MZI and Φ-OTDR vibration sensing system with high frequency response[J]. Optics Communications, 382, 176-181(2017).

    [61] Shan Y Y, Dong J Y, Zeng J et al. A broadband distributed vibration sensing system assisted by a distributed feedback interferometer[J]. IEEE Photonics Journal, 10, 6800910(2017).

    [62] Zhao Z Y, Tang M, Wang L et al. Distributed vibration sensor based on space-division multiplexed reflectometer and interferometer in multicore fiber[J]. Journal of Lightwave Technology, 36, 5764-5772(2018).

    [63] Cao Y. Application of PCCP pipeline broken wire monitoring technology in emergency water supply project of Beijing-Shijiazhuang section of the middle route of South-to-North Water Transfer Project (Beijing section)[J]. Beijing Water, 44-48(2017).

    Tools

    Get Citation

    Copy Citation Text

    Xuping Zhang, Guangnan Zhou, Haoran Wang, Jin Wang, Shichao Liu, Dao Zhang, Shisong Zhao, Feng Wang, Fei Xiong, Yixin Zhang. Research Progress of Broken Wire Monitoring of Prestressed Concrete Cylinder Pipe Based on Distributed Optical Fiber Acoustic Sensing[J]. Acta Optica Sinica, 2024, 44(1): 0106006

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Fiber Optics and Optical Communications

    Received: Aug. 14, 2023

    Accepted: Oct. 7, 2023

    Published Online: Jan. 8, 2024

    The Author Email: Zhang Yixin (zyixin@nju.edu.cn)

    DOI:10.3788/AOS231405

    Topics